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Prediction of Thermal Comfort Inside a Midibus Passenger Cabin Using CFD and Its Experimental Validation

机译:使用CFD及其实验验证预测MIDIBUS客舱内的热舒适性

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This paper presents a methodology for predicting thermal comfort inside Midibus cabin with an objective to modify the Heating, Ventilation and Air Conditioning (HVAC) duct design and parametric optimization in order to have improved thermal comfort of occupant. For this purpose the bus cavity is extracted from baseline CAD model including fully seated manikins with various seating positions. Solar Load has been considered in the computational model and passenger heat load is considered as per BSR/ASHRAE 55-1992R standard. CFD simulation predicted the air temperature and velocity distribution inside passenger cabin of the baseline model. The experimental measurements have been carried out as per the guidelines set in APTA-BT-RP-003-07 standard. The results obtained from CFD and Experimental test were analysed as per EVS EN ISO7730 standard and calculated occupant comfort in terms of thermal comfort parameters like Predicted Mean Vote (PMV) and Predicted Percentage Dissatisfied (PPD). These parameters are based on seven point thermal sensation scale which defines the thermal comfort of occupant inside the passenger cabin of a bus. CFD results were found to be in good agreement with the experimental results. Based on the validation of the baseline model, duct design, layout and diffuser locations have been modified to improve thermal comfort of the occupant.
机译:本文提出了一种方法,用于预测Midibus舱内热舒适性,目的是改变加热,通风和空调(HVAC)管道设计和参数优化,以改善乘员的热舒适性。为此目的,总线腔从基线CAD模型中提取,包括具有各种座位位置的完全坐着的甘石。在计算模型中考虑了太阳能荷载,并且乘客热负荷被认为是BSR / ASHRAE 55-1992R标准。 CFD仿真预测基线模型的客舱内的空气温度和速度分布。实验测量已经根据APTA-BT-RP-003-07标准中设定的指南进行。根据EVS en ISO7730标准分析了从CFD和实验试验中获得的结果,并且在预测的平均投票(PMV)等热舒适参数方面计算乘员舒适性,并预测百分比不满(PPD)。这些参数基于七点热敏尺度,其定义了公共汽车乘客舱内的乘员的热舒适性。 CFD结果与实验结果吻合良好。基于基线模型的验证,已经修改了管道设计,布局和扩散器位置以提高乘员的热舒适度。

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